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用于口服活疫苗的伤寒沙门氏菌突变株的体外特性研究

In vitro characterization of Salmonella typhi mutant strains for live oral vaccines.

作者信息

Dragunsky E M, Rivera E, Hochstein H D, Levenbook I S

机构信息

Division of Product Quality Control, Food and Drug Administration, Bethesda, Maryland 20892.

出版信息

Vaccine. 1990 Jun;8(3):263-8. doi: 10.1016/0264-410x(90)90056-r.

Abstract

Several Salmonella typhi attenuated mutant strains, suggested as candidates for live oral vaccine, were examined for their characteristics in vitro in comparison with parental strains Ty2 and CDC10-80. Three methods were used: interaction of bacteria with the human monocyte-macrophage U937 cell line evaluated by microscopic examination, bacterial growth in the cell culture medium estimated by absorbance and bacterial resistance to human plasma assessed by the viable count technique. The most informative data were obtained in the test with U937 cells. Ty2 penetrated almost 100% of the cells, multiplied rapidly and caused death of the cells. CDC10-80 infected about 30% of the cells, multiplied slightly and did not kill the cells. The Ty2 mutant galE via EX462 behaved like CDC10-80. Bacteria of the galE Ty21a, Vi + Ty21a, 541 Ty and 543 Ty, found in only 3-4% of the cells, did not multiply within the cells and decreased in number with time. These findings correlate with the reported virulence of these strains for humans. With the second method, the rate of bacterial growth in cell culture medium did not differentiate Ty2, CDC10-80 and EX462. They grew at the same rate and faster than the remaining mutants. The plasma resistance test did not discriminate between EX462 and other mutants. These tests did not reveal any difference between Vi + Ty21a and Vi-Ty21a.

摘要

几种被提议作为口服活疫苗候选株的伤寒沙门氏菌减毒突变株,与亲本菌株Ty2和CDC10 - 80相比,在体外对其特性进行了检测。使用了三种方法:通过显微镜检查评估细菌与人单核细胞 - 巨噬细胞U937细胞系的相互作用,通过吸光度估计细胞培养基中的细菌生长,以及通过活菌计数技术评估细菌对人血浆的抗性。在对U937细胞的测试中获得了最具信息量的数据。Ty2侵入了几乎100%的细胞,迅速繁殖并导致细胞死亡。CDC10 - 80感染了约30%的细胞,略有繁殖且未杀死细胞。通过EX462产生的Ty2 galE突变株表现与CDC10 - 80相似。在仅3 - 4%的细胞中发现的galE Ty21a、Vi + Ty21a、541 Ty和543 Ty细菌,在细胞内不繁殖,且数量随时间减少。这些发现与这些菌株对人类的报道毒力相关。使用第二种方法,细胞培养基中细菌的生长速率无法区分Ty2、CDC10 - 80和EX462。它们以相同的速率生长,且比其余突变株生长得更快。血浆抗性测试无法区分EX462和其他突变株。这些测试未揭示Vi + Ty21a和Vi - Ty21a之间的任何差异。

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